1 |
Exergo-economic analyses of two building integrated energy systems using an exergy diagram Saloux E, Sorin M, Teyssedou A Solar Energy, 189, 333, 2019 |
2 |
Proof of concept to recover thermal wastes from aluminum electrolysis cells using Stirling engines Cascella F, Gaboury S, Sorin M, Teyssedou A Energy Conversion and Management, 172, 497, 2018 |
3 |
Modeling the dynamic and thermodynamic operation of Stirling engines by means of an equivalent electrical circuit Cascella F, Sorin M, Formosa F, Teyssedou A Energy Conversion and Management, 150, 295, 2017 |
4 |
Modeling the exergy performance of heat pump systems without using refrigerant thermodynamic properties Saloux E, Sorin M, Teyssedou A Energy and Buildings, 112, 69, 2016 |
5 |
Development of an exergy-electrical analogy for visualizing and modeling building integrated energy systems Saloux E, Teyssedou A, Sorin M Energy Conversion and Management, 89, 907, 2015 |
6 |
Analysis of photovoltaic (PV) and photovoltaic/thermal (PV/T) systems using the exergy method Saloux E, Teyssedou A, Sorin M Energy and Buildings, 67, 275, 2013 |
7 |
Explicit model of photovoltaic panels to determine voltages and currents at the maximum power point Saloux E, Teyssedou A, Sorin M Solar Energy, 85(5), 713, 2011 |
8 |
A complex but accurate correlation for predicting critical heat flux in a round tube for low and medium pressures under circumferentially non-uniform heating conditions Olekhnovitch A, Sun J, Teyssedou A International Journal of Heat and Mass Transfer, 51(7-8), 2041, 2008 |
9 |
A model for energy analysis in supermarkets Ducoulombier M, Teyssedou A, Sorin M Energy and Buildings, 38(4), 349, 2006 |
10 |
An empirical correlation for calculating steam-water two-phase pressure drop in uniformly heated vertical round tubes Olekhnovitch A, Teyssedou A, Tye P, Felisari R International Journal of Multiphase Flow, 31(3), 358, 2005 |